A ball of mass m = 1.80 kg is released from rest at a height h = 65.0 cm above a light vertical spring of force constant k as in Figure P5.64a. The ball strikes the top of the spring and compresses it a distance d = 9.00 cm as in Figure P5.64b. Neglecting any energy losses during the colli- sion, find (a) the speed of the ball just as it touches the spring and (b) the force constant of т the spring. ь Figure P5.64
A ball of mass m = 1.80 kg is released from rest at a height h = 65.0 cm above a light vertical spring of force constant k as in Figure P5.64a. The ball strikes the top of the spring and compresses it a distance d = 9.00 cm as in Figure P5.64b. Neglecting any energy losses during the colli- sion, find (a) the speed of the ball just as it touches the spring and (b) the force constant of т the spring. ь Figure P5.64
College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter5: Energy
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![A ball of mass m = 1.80 kg is released from rest at a height
h = 65.0 cm above a light vertical spring of force constant
k as in Figure P5.64a. The ball strikes the top of the spring
and compresses it a distance d = 9.00 cm as in Figure P5.64b.
Neglecting any energy
losses during the colli-
sion, find (a) the speed
of the ball just as it
touches the spring and
(b) the force constant of
т
the spring.
ь
Figure P5.64](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fccbb690d-836f-4861-8a9d-2f56227a477d%2F917e0708-a81e-497b-b4d1-d9d169abedaf%2Fa9ug7ia.png&w=3840&q=75)
Transcribed Image Text:A ball of mass m = 1.80 kg is released from rest at a height
h = 65.0 cm above a light vertical spring of force constant
k as in Figure P5.64a. The ball strikes the top of the spring
and compresses it a distance d = 9.00 cm as in Figure P5.64b.
Neglecting any energy
losses during the colli-
sion, find (a) the speed
of the ball just as it
touches the spring and
(b) the force constant of
т
the spring.
ь
Figure P5.64
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